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稳定金属有机多面体(MOP):问题与策略。

Stabilizing Metal-Organic Polyhedra (MOP): Issues and Strategies.

机构信息

Department of Chemistry, Indian Institute of Science Education and Research (IISER), Pune, 411008, India.

Centre for Energy Science, IISER Pune, Pune, 411008, India.

出版信息

Chem Asian J. 2019 Sep 16;14(18):3096-3108. doi: 10.1002/asia.201900800. Epub 2019 Aug 23.

Abstract

Metal-organic polyhedra (MOPs) are discrete, metal-organic molecular entities composed of edge-sharing molecular polygons or connected molecular vertices. Unlike the infinite metal-organic coordination networks popularized by metal-organic frameworks (MOFs), spherical MOPs, also known as nanocages, nanospheres, nanocapsules, or nanoballs, are obtained through the self-organization of metal-carboxylate or metal-pyridine/pyrimidine links to afford cage-like nanoarchitectures. MOPs offer much promise as porous materials owing to their well-defined structures and solution processability. However, these advantages become moot if their poor aqueous stability and/or guest-removal-induced aggregation handicaps remain unaddressed. The concise premise of this contribution limits our discussion to the design principles in action behind recent developments in stable carboxylate MOPs. To highlight the structure-property relationships between the structural and compositional features of these metal carboxylate polyhedra, related scientific challenges and state-of-the-art research directions for further exploration are presented in brief.

摘要

金属有机多面体(MOPs)是由边缘共享分子多边形或连接分子顶点组成的离散的金属有机分子实体。与金属有机框架(MOFs)中流行的无限金属有机配位网络不同,通过金属-羧酸酯或金属-吡啶/嘧啶键的自组装获得球形 MOPs,也称为纳米笼、纳米球、纳米胶囊或纳米球,从而提供笼状纳米结构。由于其结构明确且具有溶液加工性,MOPs 作为多孔材料具有很大的应用前景。然而,如果它们的水稳定性差和/或客体去除诱导聚集的问题得不到解决,这些优势就变得毫无意义。本研究的简要前提将我们的讨论限制在最近稳定羧酸酯 MOPs 发展背后的设计原则上。为了突出这些金属羧酸多面体的结构-性能关系,简要介绍了相关的科学挑战和进一步探索的最新研究方向。

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